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Single phase induction motor alternate start-up and speed control method for renewable energy applications

机译:可再生能源应用的单相感应电动机交替启动和速度控制方法

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The Single Phase Induction Motor (SPIM) is known for its simplicity and convenience. It is most commonly used in homes, businesses and small industries. One of the most known advantages of the SPIM is that they require a single phase to maintain the motor in motion. The only drawback is that due to the lack of starting torque, an additional auxiliary winding is required to start the motor. This increases costs and reduces the performance as well as the reliability. With the increasing popularity of renewable energy, there is a need for developing methods that couple these two technologies. Wind and solar power is a variable source of energy due to its dependency on natural resources, which makes connecting them directly to SPIM tedious. This connection can be achieved by driving a SPIM with solid state electronics in order to start-up and control rotor speed. This paper introduces an alternate start-up method by driving the SPIM with solid state electronics. This alternate method is achieved by driving a SPIM with a two-phase supply obtained from an AC to AC converter. Using a cycloconverter to control the start-up allows a new level of speed control, by manipulating the main winding waveform. A Simulink SPIM model is used to compare simulated results with the constructed AC to AC converter prototype.
机译:单相感应电动机(SPIM)以其简单和方便而著称。它最常用于家庭,企业和小型行业。 SPIM的最著名的优点之一是它们需要单相来使电动机保持运动。唯一的缺点是,由于缺少启动转矩,需要额外的辅助绕组来启动电动机。这增加了成本并且降低了性能以及可靠性。随着可再生能源的日益普及,需要开发结合这两种技术的方法。风能和太阳能由于其对自然资源的依赖而成为可变的能源,这使得将它们直接连接到SPIM变得乏味。可以通过使用固态电子器件驱动SPIM来启动和控制转子速度来实现这种连接。本文介绍了一种采用固态电子器件驱动SPIM的替代启动方法。通过使用从AC到AC转换器获得的两相电源来驱动SPIM,可以实现这种替代方法。通过控制主绕组波形,使用一个循环转换器控制启动可以将速度控制提高到一个新的水平。 Simulink SPIM模型用于将仿真结果与构建的交流到交流转换器原型进行比较。

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